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同域物种形成:在细菌中何时可能发生?

Sympatric speciation: when is it possible in bacteria?

机构信息

Program in Computational and Systems Biology, Massachusetts Institute of Technology, Cambridge, Massachusetts, United States of America.

出版信息

PLoS One. 2013;8(1):e53539. doi: 10.1371/journal.pone.0053539. Epub 2013 Jan 17.

Abstract

According to theory, sympatric speciation in sexual eukaryotes is favored when relatively few loci in the genome are sufficient for reproductive isolation and adaptation to different niches. Here we show a similar result for clonally reproducing bacteria, but which comes about for different reasons. In simulated microbial populations, there is an evolutionary tradeoff between early and late stages of niche adaptation, which is resolved when relatively few loci are required for adaptation. At early stages, recombination accelerates adaptation to new niches (ecological speciation) by combining multiple adaptive alleles into a single genome. Later on, without assortative mating or other barriers to gene flow, recombination generates unfit intermediate genotypes and homogenizes incipient species. The solution to this tradeoff may be simply to reduce the number of loci required for speciation, or to reduce recombination between species over time. Both solutions appear to be relevant in natural microbial populations, allowing them to diverge into ecological species under similar constraints as sexual eukaryotes, despite differences in their life histories.

摘要

根据理论,当基因组中相对较少的基因座足以实现生殖隔离和适应不同小生境时,性真核生物的同域物种形成就会受到青睐。在这里,我们展示了一种类似的结果,适用于无性繁殖的细菌,但原因却不同。在模拟的微生物种群中,小生境适应的早期和晚期阶段之间存在着一种进化权衡,当适应所需的基因座相对较少时,这种权衡就会得到解决。在早期阶段,重组通过将多个适应性等位基因组合到单个基因组中,加速了对新小生境的适应(生态物种形成)。后来,没有同型交配或其他基因流动的障碍,重组会产生不适应的中间基因型,并使初生种同质化。这种权衡的解决方案可能是简单地减少物种形成所需的基因座数量,或者随着时间的推移减少物种之间的重组。这两种解决方案似乎都与自然微生物种群有关,尽管它们的生活史不同,但它们能够在类似的限制下分化为生态物种。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c17e/3547939/bf18884738fb/pone.0053539.g001.jpg

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